首页> 外文期刊>Combustion, Explosion, and Shock Waves >Mechanism of Combustion Catalysis by Ferrocene Derivatives. 2. Combustion of Ammonium Perchlorate-Based Propellants with Ferrocene Derivatives
【24h】

Mechanism of Combustion Catalysis by Ferrocene Derivatives. 2. Combustion of Ammonium Perchlorate-Based Propellants with Ferrocene Derivatives

机译:二茂铁衍生物的燃烧催化机理。 2.高氯酸铵基推进剂与二茂铁衍生物的燃烧

获取原文
获取原文并翻译 | 示例
           

摘要

Combustion of mixtures of a narrow fraction of ammonium per chlorate (AP) with hydrocarbon binders and combustion catalysts diethylferrocene and 1,1'-bis(dimethyloctyloxysilyl)ferrocene, as well as nano-sized Fe2O3 is studied. It is shown that the efficiency of ferrocene compounds from the viewpoint of increasing the burning rate depends on the oxidizer/fuel ratio in the propellant and on the place of the leading reaction of combustion. In composites with a high oxidizer/fuel ratio whose combustion follows the gas-phase model, the catalyst efficiency is rather low. In systems with a low oxidizer/fuel ratio where the contribution of condensed-phase reactions to the burning rate of the system is rather large, the catalyst efficiency is noticeably greater, and it is directly related to the possibility of formation of a soot skeleton during combustion. The close values of the catalytic activity of ferrocenes and Fe2O3 in the case of their small concentrations in such compositions testify that the main contribution to the increase in the propellant burning rate is made by Fe2O3 formed due to rapid oxidation of ferrocene on the AP surface and accumulated on the soot skeleton. Thermocouple measurements of propellants with a low oxidizer/fuel ratio are performed, and it is shown that the temperature of their surface is determined by plasticizer evaporation. A phenomenological model of combustion of the examined propellants is proposed.
机译:研究了窄氯酸铵(AP)与烃类粘合剂和燃烧催化剂二乙基二茂铁和1,1'-双(二甲基辛基氧基甲硅烷基)二茂铁以及纳米级Fe2O3混合物的燃烧。从提高燃烧速率的观点来看,表明二茂铁化合物的效率取决于推进剂中的氧化剂/燃料比以及取决于燃烧的主要反应的位置。在具有高氧化剂/燃料比的复合材料(其燃烧遵循气相模型)中,催化剂效率相当低。在低氧化剂/燃料比的系统中,冷凝相反应对系统燃烧速率的贡献相当大,催化剂效率明显更高,这直接与在燃烧过程中形成烟灰骨架有关燃烧。二茂铁和Fe2O3在此类组合物中的浓度较低时,其催化活性的接近值证明,对推进剂燃烧速率增加的主要贡献是由于二茂铁在AP表面快速氧化而形成的Fe2O3和堆积在烟灰骨架上。进行了具有低氧化剂/燃料比的推进剂的热电偶测量,结果表明,其表面温度是由增塑剂蒸发确定的。提出了一种被检查推进剂燃烧的现象学模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号